| Literature DB >> 27610742 |
Yiyuan Yin1, Guanghui Han2, Jianhui Zhou1, Michael Dillon1, Luke McCarty3, Lou Gavino4, Diego Ellerman3, Christoph Spiess1, Wendy Sandoval2, Paul J Carter1.
Abstract
Bispecific IgG are heterotetramers comprising 2 pairs of heavy and light chains. Co-expression of the 4 component chains in a single host cell typically yields the desired bispecific IgG plus up to 9 additional incorrect chain pairings. Several protein engineering strategies have been reported to facilitate the heterodimerization of antibody heavy chains or cognate pairing of antibody heavy and light chains. These technologies have been used to direct the efficient assembly of bispecific IgG in single host cells and minimize unwanted chain pairings. When purifying bispecific IgGs, the identification and quantification of low levels of closely related IgG contaminants are substantial analytical challenges. Here we have developed a robust high-throughput method for quantitative analysis of bispecific IgG preparations using novel online liquid chromatography in conjunction with an extended mass range Orbitrap-based high-resolution mass spectrometer. A mathematical method was developed to estimate the yields of the 2 isobaric species, namely the desired bispecific IgG and the light chain-scrambled IgG. The analytical methods described herein are anticipated to be broadly applicable to the development of bispecific IgG as drugs and potentially to other complex next-generation biotherapeutics.Entities:
Keywords: Bispecific antibody; DNA ratios; bispecific IgG quantification; high-resolution mass spectrometry; single host expression
Mesh:
Substances:
Year: 2016 PMID: 27610742 PMCID: PMC5098441 DOI: 10.1080/19420862.2016.1232217
Source DB: PubMed Journal: MAbs ISSN: 1942-0862 Impact factor: 5.857
Figure 1.Mass envelope of a glycosylated monoclonal antibody after parameter optimization taken from a 15 min LC-MS analysis under final conditions. (A) TIC trace from 500 ng injected IgG glycosylated standard, (B), ion envelope of (A), and (C) expansion of 2 adjacent charge states of 500 ng IgG standard.
Figure 2.LC-MS quantification of BsIgG samples from expression in single host cells. (A) Schematic diagram of 4 IgG species with heterodimerized heavy chains expressed by co-transfection of HEK 293 cells. (B) Stacked mass spectra of spike-in samples containing anti-HER2/CD3 IgG species, BsIgG (H1L1/H2L2) and 2 mispaired IgG species H1L1/H2L1 and H1L2/H2L2. The heavy and light chains of anti-HER2 are represented as H1 and L1, respectively. The heavy and light chains of anti-CD3 are represented as H2 and L2, respectively. The H1L1/H2L1: H1L1/H2L2: H1L2/H2L2 ratios of 33:33:33, 10:80:10, 5:90:5 and 1:98:1 were analyzed. The BsIgG sample was assembled in vitro using anti-HER2 and anti-CD3 half antibodies, and the H1L1/H2L1 and H1L2/H2L2 IgG were produced by co-expression of KiH-modified heavy chains of the anti-HER2 and anti-CD3 antibodies with either of the 2 light chains, L1 or L2, respectively. (C) Plot of measured vs. known percentages of the BsIgG species at different ratios from the spike-in experiment. Data were fitted linearly with an R-squared value of 0.9998. Samples were run in quadruplicate. Refer to table S2 for standard deviations. (D) Mass spectra of the anti-HER2/CD3 BsIgG sample. H1 and L1 represent the heavy and light chains of anti-HER2. H2 and L2 represent the heavy and light chains of anti-CD3. The measured masses and theoretical masses (in parentheses) of each IgG species are labeled on top of each peak. The quantified percentages of the IgG species are also labeled on one side of each peak. (E) Mass spectra of the anti-VEGFA/VEGFC BsIgG sample. H1 and L1 represent the heavy and light chains of anti-VEGFA. H2 and L2 represent the heavy and light chains of anti-VEGFC.
Figure 3.LC-MS analyses of the Fab samples from digested IgG to verify the mathematical estimation of the BsIgG species. (A) Four Fab species derived from lysyl-C digestion of the BsIgG sample. (B) Mass spectra of the digested anti-HER2/CD3 BsIgG sample. H1 and L1 represent the cleaved heavy chain plus light chain of anti-HER2. H2 and L2 represent the cleaved heavy chain plus light chain of anti-CD3. The measured masses and theoretical masses (in parentheses) of each Fab species are labeled on top of each peak. The measured percentages and calculated percentages (in parentheses) of the Fab species are labeled on one side of each peak. (C) Mass spectra of the digested anti-VEGFA/VEGFC BsIgG sample. H1 and L1 represent the cleaved heavy chain and light chain of anti-VEGFA. H2 and L2 represent the cleaved heavy chain and light chain of anti-VEGFC.
Figure 4.Plots of the percentages of the IgG species (H1L1/H2L2, H1L2/H2L1, H1L1/H2L1, H1L2/H2L2), produced by co-transfection of Expi293 cells with different heavy and light chain DNA weight ratios for (A) anti-HER2/CD3 and (B) anti-VEGFA/VEGFC.